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Correction of image artifacts from treatment couch in cone-beam CT from kV on-board imaging

机译:通过kV车载成像校正锥束CT中治疗床的图像伪影

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摘要

To investigate image artifacts caused by a standard treatment couch on cone-beam CT (CBCT) images from a kV on-board imager and to develop an algorithm based on spatial domain filtering to remove image artifacts in CBCT induced by the treatment couch. Methods: Image artifacts in CBCT induced by the treatment couch were quantified by scanning a phantom used to quantify CT image performance. This was performed by scanning the phantom setup on a regular treatment couch and in air with the kV on-board imager. An algorithm was developed to filter image artifacts from the treatment couch by processing of cone-beam radiographic projections using two scans: one scan of the phantom and treatment couch and a second scan of the treatment couch only. This algorithm is based on a pixel-by-pixel removal of beam attenuation due to the treatment couch from each projection of the phantom and couch scan. The net couch-filtered projections were then used to reconstruct CBCT. Results: We found that the treatment couch causes considerable image artifacts: CT number uniformity is degraded and varies as much as 15%, and noise in CBCT scans with phantom plus couch (3.5%) is higher than for the phantom in air (1.5%). The spatial domain filtering technique reduces noise by more than 1.5%, improves uniformity by a factor of 2, and removes ringing and streaking artifacts related to the standard treatment couch in CBCT reconstructed from couch-filtered projections. This filtering technique was tested successfully to filter other hardware objects such as a patient immobilization body-fix frame. Conclusions: The standard treatment couch causes image artifact in CBCT from kV on-board imaging systems. The spatial domain filtering technique developed in this work improves image quality of CBCT by preprocessing the projections prior to CBCT reconstruction. This technique might be useful to filter other hardware objects from CBCT which may contribute to the degradation of image quality.
机译:要研究由kV车载成像仪在锥形束CT(CBCT)图像上由标准治疗床引起的图像伪影,并开发一种基于空间域滤波的算法,以消除由治疗床引起的CBCT中的图像伪影。方法:通过扫描用于量化CT图像性能的体模,量化由治疗床诱发的CBCT中的图像伪影。这是通过使用kV车载成像仪在常规治疗床上和空气中扫描幻像装置来执行的。开发了一种通过使用两次扫描处理锥束射线照相投影来从治疗床中滤除图像伪影的算法:一次扫描幻像和治疗床,第二次仅扫描治疗床。该算法基于逐个像素消除因幻影和床扫描的每个投影导致的治疗床引起的光束衰减。然后将网状沙发过滤后的投影用于重建CBCT。结果:我们发现治疗床会产生相当大的图像伪影:CT数量均匀性下降,变化幅度高达15%,并且使用幻像加床的CBCT扫描噪声(3.5%)高于空气中的幻像(1.5%) )。空间域滤波技术可将噪音降低1.5%以上,将均匀性提高2倍,并消除与从CBCT床投影中重建的CBCT中标准治疗床相关的振铃和条纹伪影。该过滤技术已成功测试以过滤其他硬件对象,例如固定患者固定架。结论:标准治疗床会导致kV车载成像系统在CBCT中产生图像伪影。在这项工作中开发的空间域滤波技术通过在CBCT重建之前对投影进行预处理来提高CBCT的图像质量。此技术可能对从CBCT筛选其他硬件对象很有用,这可能会导致图像质量下降。

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